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全面分析 bZIP 基因家族和 RcbZIP17 在玫瑰(Rosa chinensis)对灰霉病抗性中的功能。

Comprehensive analysis of bZIP gene family and function of RcbZIP17 on Botrytis resistance in rose (Rosa chinensis).

机构信息

Beijing Key Laboratory of Development and Quality Control of Ornamental Crops, Department of Ornamental Horticulture, China Agricultural University, Beijing, China.

Beijing Key Laboratory of Development and Quality Control of Ornamental Crops, Department of Ornamental Horticulture, China Agricultural University, Beijing, China; College of Horticulture, Hainan University, Haikou, China.

出版信息

Gene. 2023 Jan 15;849:146867. doi: 10.1016/j.gene.2022.146867. Epub 2022 Sep 14.

Abstract

Rose is an important ornamental plant and a commercial source of natural fragrances and essential oils. However, gray mold is the most serious disease of rose during cultivation and post-harvest. In plants, the bZIP gene family is one of the important families of transcription factors that regulate many biological processes, including pathogen defense, light response, and stress signaling. Although there were reports that bZIPs play a key role in plant pathogen defense, there have been no comprehensive studies or functional analysis of the bZIP gene family in rose (Rosa sp.) yet. In this study, a genome-wide analysis of the bZIP family gene (RcbZIPs) in rose was carried out to investigate their phylogenetic relationships, gene structure, chromosome localizations, collinearity, and the function of RcbZIP17. In the rose genome, 48 RcbZIP genes were identified and divided into 11 subgroups by phylogenetic relationships. Moreover, gene structure analysis agreed with phylogenetic tree grouping. The RcbZIPs were unevenly distributed on all seven chromosomes. The gene duplication events indicated that segmental duplication of the entire genome may play a key role in gene duplication. A Ka/Ks analysis showed that they mainly underwent purifying selection with limited functional differentiation. Gene expression analysis showed that 16 RcbZIPs were significantly differential expressed by Botrytis cinerea infection. It is speculated that these RcbZIPs are candidate genes for regulating the response of rose to gray mold infection. According to virus-induced gene silencing (VIGS) and overexpression (OE) studies, RcbZIP17 was implicated in the resistance of rose to gray mold. This study provides useful information for further study on the function of the bZIP gene family in rose.

摘要

玫瑰是一种重要的观赏植物,也是天然香料和精油的商业来源。然而,灰霉病是玫瑰在种植和收获后最严重的疾病。在植物中,bZIP 基因家族是调节许多生物过程的转录因子的重要家族之一,包括病原体防御、光反应和应激信号转导。尽管有报道称 bZIPs 在植物病原体防御中发挥关键作用,但尚未对玫瑰(Rosa sp.)中的 bZIP 基因家族进行全面研究或功能分析。本研究对玫瑰 bZIP 家族基因(RcbZIPs)进行了全基因组分析,以研究其系统发育关系、基因结构、染色体定位、共线性以及 RcbZIP17 的功能。在玫瑰基因组中,鉴定出 48 个 RcbZIP 基因,并通过系统发育关系分为 11 个亚组。此外,基因结构分析与系统发育树分组一致。RcbZIPs 在所有 7 条染色体上不均匀分布。基因复制事件表明,整个基因组的片段复制可能在基因复制中起关键作用。Ka/Ks 分析表明,它们主要经历了纯化选择,功能分化有限。基因表达分析表明,16 个 RcbZIPs 在受到 Botrytis cinerea 感染时差异显著表达。推测这些 RcbZIPs是调控玫瑰对灰霉病感染反应的候选基因。根据病毒诱导的基因沉默(VIGS)和过表达(OE)研究,RcbZIP17 参与了玫瑰对灰霉病的抗性。本研究为进一步研究 bZIP 基因家族在玫瑰中的功能提供了有用信息。

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